Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines

Direct-driven ironless-stator machines have been reported to have low requirements on the strength of the supporting structures. This feature is attractive for offshore wind turbines, where lightweight generators are preferred. However, to produce sufficient torque, ironless generators are normally...

Full description

Bibliographic Details
Main Authors: Zhang, Z., Nilssen, R., Muyeen, S.M., Nysveen, A., Al-Durra, A.
Format: Journal Article
Published: Taylor and Francis 2017
Online Access:http://hdl.handle.net/20.500.11937/18747
_version_ 1848749833305718784
author Zhang, Z.
Nilssen, R.
Muyeen, S.M.
Nysveen, A.
Al-Durra, A.
author_facet Zhang, Z.
Nilssen, R.
Muyeen, S.M.
Nysveen, A.
Al-Durra, A.
author_sort Zhang, Z.
building Curtin Institutional Repository
collection Online Access
description Direct-driven ironless-stator machines have been reported to have low requirements on the strength of the supporting structures. This feature is attractive for offshore wind turbines, where lightweight generators are preferred. However, to produce sufficient torque, ironless generators are normally designed with large diameters, which can be a challenge to the machine’s structural reliability. The ironless multi-stage axial-flux permanent magnet generator (MS-AFPMG) has the advantages of ironless machines but a relatively small diameter. The objective of this article is to present the design optimization and performance investigation of the ironless MS-AFPMG. An existing design strategy, which employs two- and three-dimensional static finite element analyses and genetic algorithm for machine optimization, is improved with the aim of reducing the calculation load and calculation time. This improved design strategy is used to investigate the optimal ironless MS-AFPMG. Some intrinsic features of this kind of machine are revealed.
first_indexed 2025-11-14T07:27:13Z
format Journal Article
id curtin-20.500.11937-18747
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:27:13Z
publishDate 2017
publisher Taylor and Francis
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-187472017-09-13T16:10:06Z Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines Zhang, Z. Nilssen, R. Muyeen, S.M. Nysveen, A. Al-Durra, A. Direct-driven ironless-stator machines have been reported to have low requirements on the strength of the supporting structures. This feature is attractive for offshore wind turbines, where lightweight generators are preferred. However, to produce sufficient torque, ironless generators are normally designed with large diameters, which can be a challenge to the machine’s structural reliability. The ironless multi-stage axial-flux permanent magnet generator (MS-AFPMG) has the advantages of ironless machines but a relatively small diameter. The objective of this article is to present the design optimization and performance investigation of the ironless MS-AFPMG. An existing design strategy, which employs two- and three-dimensional static finite element analyses and genetic algorithm for machine optimization, is improved with the aim of reducing the calculation load and calculation time. This improved design strategy is used to investigate the optimal ironless MS-AFPMG. Some intrinsic features of this kind of machine are revealed. 2017 Journal Article http://hdl.handle.net/20.500.11937/18747 10.1080/0305215X.2016.1208191 Taylor and Francis fulltext
spellingShingle Zhang, Z.
Nilssen, R.
Muyeen, S.M.
Nysveen, A.
Al-Durra, A.
Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title_full Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title_fullStr Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title_full_unstemmed Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title_short Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
title_sort design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines
url http://hdl.handle.net/20.500.11937/18747